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首页> 外文期刊>Epigenomes >Uncovering Differentially Methylated Regions (DMRs) in a Salt-Tolerant Rice Variety under Stress: One Step towards New Regulatory Regions for Enhanced Salt Tolerance
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Uncovering Differentially Methylated Regions (DMRs) in a Salt-Tolerant Rice Variety under Stress: One Step towards New Regulatory Regions for Enhanced Salt Tolerance

机译:在压力下揭开耐盐分水稻品种中的差异甲基化区域(DMRS):朝向新的调节区进行增强的耐盐性的一步

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摘要

Chromatin structure, DNA methylation, and histone modifications act in a concerted manner to influence gene expression and therefore plant phenotypes. Environmental stresses are often associated with extensive chromatin rearrangements and modifications of epigenetic levels and patterns. Stress-tolerant plants can be a good tool to unveil potential connections between specific epigenetic modifications and stress tolerance capacity. We analyzed genome wide DNA methylation of a salt-tolerant rice variety under salinity and identified a set of differentially methylated regions (DMRs) between control and stress samples using high-throughput sequencing of DNA immunoprecipitated with the 5-methylcytosine antibody (MeDIP-Seq). The examination of DNA methylation pattern at DMRs regions revealed a general tendency for demethylation events in stress samples as compared to control. In addition, DMRs appear to influence the expression of genes located in their vicinity. We hypothesize that short regions as DMRs can shape the chromatin landscape of specific genomic regions and, therefore, may modulate the function of several genes. In this sense, the identification of DMRs represents one step towards to uncover new players in the regulation of stress-responsive genes and new target genes with potential application in enhancement of plant salinity-tolerance.
机译:染色质结构,DNA甲基化和组蛋白修饰以齐心的方式起作用以影响基因表达并因此影响植物表型。环境应力通常与广泛的染色质重排和表观遗传水平和模式有关。应力耐养植物可以是揭示特定表观遗传修饰和应力容许能力之间的潜在连接的良好工具。我们分析了盐度下耐盐性水稻品种的基因组宽DNA甲基化,并使用用5-甲基胞嘧啶抗体的DNA的高通量测序鉴定了一种对照和应力样品之间的一组差异甲基化区域(DMRS)(Medip-SEQ) 。与对照相比,DMRS区域对DNA甲基化图案的检查显示了应力样品中的去甲基化事件的一般趋势。此外,DMRS似乎影响位于其附近的基因的表达。我们假设作为DMRS的短区域可以塑造特定基因组区域的染色质景观,因此可以调节几种基因的功能。从这个意义上讲,DMRS的鉴定代表了一个步骤,朝向调节应激响应基因和新靶基因的新靶基因,潜在应用在提高植物盐度耐受性方面。

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